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Effect of Carbon-coated Silicon/Graphite Composite Anode on the Electrochemical Properties

机译:碳包覆硅/石墨复合阳极对电化学性能的影响

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摘要

The effects of carbon-coated silicon/graphite (Si/Gr.) composite anode on the electrochemical properties were investigated. The nanosized silicon particle shows a good cycling performance with a reasonable value of the first reversible capacity as compared with microsized silicon particle. The carbon-coated silicon/graphite composite powders have been prepared by pyrolysis method under argon/10 wt% propylene gas flow at 700 °C for 7 h. Transmission electron microscopy (TEM) analysis indicates that the carbon layer thickness of 5 nm was coated uniformly onto the surface silicon powder. It is confirmed that the insertion of lithium ions change the crystalline silicon phase into the amorphous phase by X-ray diffraction (XRD) analysis. The carbon-coated composite silicon/graphite anode shows excellent cycling performance with a reversible value of 700 mAh/g. The superior electrochemical characteristics are attributed to the enhanced electronic conductivity and low volume change of silicon powder during cycling by carbon coating.
机译:研究了碳包覆的硅/石墨(Si / Gr。)复合阳极对电化学性能的影响。与微米尺寸的硅颗粒相比,纳米尺寸的硅颗粒表现出良好的循环性能,并且具有可逆的第一可逆容量值。碳包覆的硅/石墨复合粉已通过热解法在氩气/丙烯重量百分比为700%的氩气流下于700°C保温7小时制得。透射电子显微镜(TEM)分析表明5nm的碳层厚度均匀地涂覆在表面硅粉上。通过X射线衍射(XRD)分析确认锂离子的插入将结晶硅相改变为非晶相。碳涂层复合硅/石墨阳极显示出出色的循环性能,可逆值为700 mAh / g。优异的电化学特性归因于碳涂层循环中硅粉增强的电子导电性和低体积变化。

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